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Dynamical decoupling for a qubit in telegraph-like noises
Based on the stochastic theory developed by Kubo and Anderson, we present an
exact result of the decoherence function of a qubit in telegraph-like noises
under dynamical decoupling control. We prove that for telegraph-like noises,
the decoherence can be suppressed at most to the third order of the time and
the periodic Carr-Purcell-Merboom-Gill sequences are the most efficient scheme
in protecting the qubit coherence in the short-time limit.Comment: 4 page
Tunable terahertz emission from difference-frequency in biased superlattices
The terahertz emission from difference-frequency in biased superlattices is
calculated with the excitonic effect included. Owing to the doubly resonant
condition and the excitonic enhancement, the typical susceptibility can be as
large as m/V. The doubly resonant condition can always be realized by
adjusting the bias voltage and the laser frequencies, thus the in-situ tunable
emission is efficient in a range of several terahertz. Continuous wave
operation with 1% quantum efficiency and W output power is feasible as the
signal absorption in undoped superlattices is negligible.Comment: 3pages 2figure
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